Cargando…
Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1
Noninvasive measurements of liver perfusion and fibrosis in cirrhotic small animals can help develop treatments for haemodynamic complications of liver disease. Here, we measure liver perfusion in cirrhotic rodents using flow‐sensitive alternating inversion recovery arterial spin labelling (FAIR ASL...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8427466/ https://www.ncbi.nlm.nih.gov/pubmed/33029872 http://dx.doi.org/10.1002/nbm.4423 |
_version_ | 1783750181103075328 |
---|---|
author | Chouhan, Manil Dinesh Ramasawmy, Rajiv Bainbridge, Alan Campbell‐Washburn, Adrienne Halligan, Steve Davies, Nathan Walker‐Samuel, Simon Lythgoe, Mark F. Mookerjee, Rajeshwar Prosad Taylor, Stuart Andrew |
author_facet | Chouhan, Manil Dinesh Ramasawmy, Rajiv Bainbridge, Alan Campbell‐Washburn, Adrienne Halligan, Steve Davies, Nathan Walker‐Samuel, Simon Lythgoe, Mark F. Mookerjee, Rajeshwar Prosad Taylor, Stuart Andrew |
author_sort | Chouhan, Manil Dinesh |
collection | PubMed |
description | Noninvasive measurements of liver perfusion and fibrosis in cirrhotic small animals can help develop treatments for haemodynamic complications of liver disease. Here, we measure liver perfusion in cirrhotic rodents using flow‐sensitive alternating inversion recovery arterial spin labelling (FAIR ASL), evaluating agreement with previously validated caval subtraction phase‐contrast magnetic resonance imaging (PCMRI) total liver blood flow (TLBF). Baseline differences in cirrhotic rodents and the haemodynamic effects of acute inflammation were investigated using FAIR ASL and tissue T1. Sprague–Dawley rats (nine bile duct ligated [BDL] and ten sham surgery controls) underwent baseline hepatic FAIR ASL with T1 measurement and caval subtraction PCMRI (with two‐dimensional infra‐/supra‐hepatic inferior vena caval studies), induction of inflammation with intravenous lipopolysaccharide (LPS) and repeat liver FAIR ASL with T1 measurement after ~90 minutes. The mean difference between FAIR ASL hepatic perfusion and caval subtraction PCMRI TLBF was −51 ± 30 ml/min/100 g (Bland–Altman 95% limits‐of‐agreement ±258 ml/min/100 g). The FAIR ASL coefficient of variation was smaller than for caval subtraction PCMRI (29.3% vs 50.1%; P = .03). At baseline, FAIR ASL liver perfusion was lower in BDL rats (199 ± 32 ml/min/100 g vs sham 316 ± 24 ml/min/100 g; P = .01) but liver T1 was higher (BDL 1533 ± 50 vs sham 1256 ± 18 ms; P = .0004). Post‐LPS FAIR ASL liver perfusion response differences were observed between sham/BDL rats (P = .02), approaching significance in sham (+78 ± 33 ml/min/100 g; P = .06) but not BDL rats (−49 ± 40 ml/min/100 g; P = .47). Post‐LPS differences in liver tissue T1 were nonsignificant (P = .35). FAIR ASL hepatic perfusion and caval subtraction PCMRI TLBF agreement was modest, with significant baseline FAIR ASL liver perfusion and tissue T1 differences in rodents with advanced cirrhosis compared with controls. Following inflammatory stress, differences in hepatic perfusion response were detected between cirrhotic/control animals, but liver T1 was unaffected. Findings underline the potential of FAIR ASL in the assessment of vasoactive treatments for patients with chronic liver disease and inflammation. |
format | Online Article Text |
id | pubmed-8427466 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-84274662021-09-13 Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 Chouhan, Manil Dinesh Ramasawmy, Rajiv Bainbridge, Alan Campbell‐Washburn, Adrienne Halligan, Steve Davies, Nathan Walker‐Samuel, Simon Lythgoe, Mark F. Mookerjee, Rajeshwar Prosad Taylor, Stuart Andrew NMR Biomed Research Articles Noninvasive measurements of liver perfusion and fibrosis in cirrhotic small animals can help develop treatments for haemodynamic complications of liver disease. Here, we measure liver perfusion in cirrhotic rodents using flow‐sensitive alternating inversion recovery arterial spin labelling (FAIR ASL), evaluating agreement with previously validated caval subtraction phase‐contrast magnetic resonance imaging (PCMRI) total liver blood flow (TLBF). Baseline differences in cirrhotic rodents and the haemodynamic effects of acute inflammation were investigated using FAIR ASL and tissue T1. Sprague–Dawley rats (nine bile duct ligated [BDL] and ten sham surgery controls) underwent baseline hepatic FAIR ASL with T1 measurement and caval subtraction PCMRI (with two‐dimensional infra‐/supra‐hepatic inferior vena caval studies), induction of inflammation with intravenous lipopolysaccharide (LPS) and repeat liver FAIR ASL with T1 measurement after ~90 minutes. The mean difference between FAIR ASL hepatic perfusion and caval subtraction PCMRI TLBF was −51 ± 30 ml/min/100 g (Bland–Altman 95% limits‐of‐agreement ±258 ml/min/100 g). The FAIR ASL coefficient of variation was smaller than for caval subtraction PCMRI (29.3% vs 50.1%; P = .03). At baseline, FAIR ASL liver perfusion was lower in BDL rats (199 ± 32 ml/min/100 g vs sham 316 ± 24 ml/min/100 g; P = .01) but liver T1 was higher (BDL 1533 ± 50 vs sham 1256 ± 18 ms; P = .0004). Post‐LPS FAIR ASL liver perfusion response differences were observed between sham/BDL rats (P = .02), approaching significance in sham (+78 ± 33 ml/min/100 g; P = .06) but not BDL rats (−49 ± 40 ml/min/100 g; P = .47). Post‐LPS differences in liver tissue T1 were nonsignificant (P = .35). FAIR ASL hepatic perfusion and caval subtraction PCMRI TLBF agreement was modest, with significant baseline FAIR ASL liver perfusion and tissue T1 differences in rodents with advanced cirrhosis compared with controls. Following inflammatory stress, differences in hepatic perfusion response were detected between cirrhotic/control animals, but liver T1 was unaffected. Findings underline the potential of FAIR ASL in the assessment of vasoactive treatments for patients with chronic liver disease and inflammation. John Wiley and Sons Inc. 2020-10-07 2021-02 /pmc/articles/PMC8427466/ /pubmed/33029872 http://dx.doi.org/10.1002/nbm.4423 Text en © 2020 The Authors. NMR in Biomedicine published by John Wiley & Sons Ltd https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Articles Chouhan, Manil Dinesh Ramasawmy, Rajiv Bainbridge, Alan Campbell‐Washburn, Adrienne Halligan, Steve Davies, Nathan Walker‐Samuel, Simon Lythgoe, Mark F. Mookerjee, Rajeshwar Prosad Taylor, Stuart Andrew Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 |
title | Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 |
title_full | Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 |
title_fullStr | Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 |
title_full_unstemmed | Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 |
title_short | Liver perfusion MRI in a rodent model of cirrhosis: Agreement with bulk‐flow phase‐contrast MRI and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue T1 |
title_sort | liver perfusion mri in a rodent model of cirrhosis: agreement with bulk‐flow phase‐contrast mri and noninvasive evaluation of inflammation in chronic liver disease using flow‐sensitive alternating inversion recovery arterial spin labelling and tissue t1 |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8427466/ https://www.ncbi.nlm.nih.gov/pubmed/33029872 http://dx.doi.org/10.1002/nbm.4423 |
work_keys_str_mv | AT chouhanmanildinesh liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT ramasawmyrajiv liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT bainbridgealan liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT campbellwashburnadrienne liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT halligansteve liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT daviesnathan liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT walkersamuelsimon liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT lythgoemarkf liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT mookerjeerajeshwarprosad liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 AT taylorstuartandrew liverperfusionmriinarodentmodelofcirrhosisagreementwithbulkflowphasecontrastmriandnoninvasiveevaluationofinflammationinchronicliverdiseaseusingflowsensitivealternatinginversionrecoveryarterialspinlabellingandtissuet1 |